期刊
JOURNAL OF PHYSICS G-NUCLEAR AND PARTICLE PHYSICS
卷 45, 期 1, 页码 -出版社
IOP PUBLISHING LTD
DOI: 10.1088/1361-6471/aa97be
关键词
supernova; core-collapse supernova; neutrinos; neutrino mass; neutrino mass ordering
资金
- Department of Energy Office of Science
- National Science Foundation
A suite of detectors around the world is poised to measure the flavor-energytime evolution of the ten-second burst of neutrinos from a core-collapse supernova occurring in the Milky Way or nearby. Next-generation detectors to be built in the next decade will have enhanced flavor sensitivity and statistics. Not only will the observation of this burst allow us to peer inside the dense matter of the extreme event and learn about the collapse processes and the birth of the remnant, but the neutrinos will bring information about neutrino properties themselves. This review surveys some of the physical signatures that the currently-unknown neutrino mass pattern will imprint on the observed neutrino events at Earth, emphasizing the most robust and least model-dependent signatures of mass ordering.
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